Phillip N. Christopher, PhD
Affiliations: | Chemical Engineering | University of California, Riverside, Riverside, CA, United States |
Area:
Heterogeneous catalysisGoogle:
"Phillip Christopher"Mean distance: 10.75 | S | N | B | C | P |
Parents
Sign in to add mentorSuljo Linic | grad student | 2006-2011 | University of Michigan | |
(Design of Nanostructured Silver Catalysts for Selective Heterogeneous Catalytic and Photocatalytic Oxidation Reactions.) |
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Publications
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Robatjazi H, Battsengel T, Finzel J, et al. (2024) Dynamic Behavior of Platinum Atoms and Clusters in the Native Oxide Layer of Aluminum Nanocrystals. Acs Nano |
Zang W, Lee J, Tieu P, et al. (2024) Distribution of Pt single atom coordination environments on anatase TiO supports controls reactivity. Nature Communications. 15: 998 |
Lee J, Tieu P, Finzel J, et al. (2023) How Pt Influences H Reactions on High Surface-Area Pt/CeO Powder Catalyst Surfaces. Jacs Au. 3: 2299-2313 |
Ro I, Qi J, Lee S, et al. (2022) Bifunctional hydroformylation on heterogeneous Rh-WO pair site catalysts. Nature. 609: 287-292 |
Resasco J, Christopher P. (2020) Atomically Dispersed Pt-group Catalysts: Reactivity, Uniformity, Structural Evolution, and Paths to Increased Functionality. The Journal of Physical Chemistry Letters. 11: 10114-10123 |
Qi J, Finzel J, Robatjazi H, et al. (2020) Selective Methanol Carbonylation to Acetic Acid on Heterogeneous Atomically Dispersed ReO4/SiO2 Catalysts. Journal of the American Chemical Society |
Siemer M, Tomaschun G, Kluener T, et al. (2020) Insights into Spectator-directed Catalysis: CO Adsorption on Amine-capped Platinum Nanoparticles on Oxide Supports. Acs Applied Materials & Interfaces |
Asokan C, Thang HV, Pacchioni G, et al. (2020) Reductant composition influences the coordination of atomically dispersed Rh on anatase TiO2 Catalysis Science & Technology. 10: 1597-1601 |
Zhou L, Martirez JMP, Finzel J, et al. (2020) Light-driven methane dry reforming with single atomic site antenna-reactor plasmonic photocatalysts Nature Energy. 5: 61-70 |
Asokan C, Yang Y, Dang A, et al. (2020) Low-Temperature Ammonia Production during NO Reduction by CO Is Due to Atomically Dispersed Rhodium Active Sites Acs Catalysis. 10: 5217-5222 |